Dendrimer-Modified MoS2 Nanoflakes as a Platform for Combinational Gene Silencing and Photothermal Therapy of Tumors

2017 ◽  
Vol 9 (19) ◽  
pp. 15995-16005 ◽  
Author(s):  
Lingdan Kong ◽  
Lingxi Xing ◽  
Benqing Zhou ◽  
Lianfang Du ◽  
Xiangyang Shi
2021 ◽  
Author(s):  
Moataz Dowaidar

Customized nanomedicines can be used in a variety of ways, including angiogenesis suppression, vascular disruption, and vascular infarction. In the angiogenesis suppression approach, VEGF, VEGFR, mTOR, EGFR, bFGF, ROS, and other components have become promising therapeutic targets. The nanomedicine system has successfully inhibited tumor neovascularization using gene silencing, chemotherapy, photothermal therapy, and other therapies. In the vascular disruption approach, VDAs supplied by nanomaterials were bonded with the bonding sites of CA4, COL, PTX, and other medications on microtubules to promote rapid disintegration of tumor vascular wall cells. Combining many medicines increased the tumor treatment outcome even more. For example, disruption of tumor blood arteries caused by nanoparticle-mediated physical methods combined with chemotherapy resulted in effective treatment in a large volume tumor model. The vascular infarction methodology uses a variety of carriers, including nanoparticles, DNA nanorobots, platelet membranes, and others, to carry thrombin, tTF, and other drugs to generate local thrombosis and provide safe and effective tumor treatment.


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2016 ◽  
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Author(s):  
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Xue-Feng Yu ◽  
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Zhi-Bin Li ◽  
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...  

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Han-Cheon Kim ◽  
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RSC Advances ◽  
2016 ◽  
Vol 6 (81) ◽  
pp. 77577-77589 ◽  
Author(s):  
Yujuan Zhang ◽  
Na Song ◽  
Jiamin Fu ◽  
Yanling Liu ◽  
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...  

IDO2 siRNA synergizes GNR-mediated anti-melanoma photothermal therapy.


2021 ◽  
Vol 32 (17) ◽  
pp. 175101
Author(s):  
Yanling Liu ◽  
Manman Tan ◽  
Chunjuan Fang ◽  
Xiaoyan Chen ◽  
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...  

2004 ◽  
Vol 171 (4S) ◽  
pp. 256-257
Author(s):  
Kazunori Haga ◽  
Ataru Sazawa ◽  
Toru Harabayashi ◽  
Nobuo Shinohara ◽  
Minoru Nomoto ◽  
...  

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